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Bioinformatics has gained high importance due to its ability to facilitate rapid clinical research, and also due to its various applications such as gene therapy and molecular science. Bioinformatics uses information technology, statistics, and algorithms to integrate biological data. Pharmaceutical companies are now adopting automated technologies to manufacture effective therapies and drugs due to increasing concerns about drug safety and the stringent regulations that govern clinical trials for drug discovery. Pharmaceutical companies have increased their focus on process improvement and quality, as the current competitive scenario offers little scope for price escalation and product differentiation.
The market for bioinformatics platforms is growing at a significant pace with the increasing demand from U.S. and Europe. This trend is supported by the increasing demand for sequencing platforms with increasing life science research using techniques such as gene expression analysis, sequence analysis, and protein expression analysis.
The global bioinformatics market is expected to reach $8.3 billion by 2014 at a high CAGR of 24.8% from 2009-2014. While knowledge management formed the largest submarket is 2009 at $1.3 billion, the bioinformatics platforms market is expected to have greatest market share in 2014 at an estimated $3.9 billion, due to rising demand from the U.S. and Europe.
Markets covered
This research report categorizes the global bioinformatics market into the following segments:
Bioinformatics platforms
- Sequence alignment platforms
- Sequence manipulation platforms,
- Sequence analysis platforms
- Structural analysis platforms
Content/Knowledge management tools
- Specialized knowledge management tools
- Generalized knowledge management tools
Services
- Data Analysis
- Sequencing Services
- Database & Management services
Applications
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Powerful Research and Analysis
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Table of Content
1 Introduction
1.1 Key Take-Aways
1.2 Report Description
1.3 Markets Covered
1.4 Research Methodology
1.5 Stakeholders
2 Summary
3 Market Overview
3.1 Introduction
3.1.1 Market Definition
3.1.2 Market Evolution
3.2 Bioinformatics And Drug Development
3.3 Sequencing Platforms Are High Priority
3.4 Relative Comparison Of Bioinformatics Features
3.5 Trends In Bioinformatics Services
3.6 Trends In Bioinformatics Applications
3.7 Bioinformatics Patents
4 Bioinformatics In Industries
4.1 Introduction
4.1.1 Bioinformatics Applications In Various Sectors
4.1.1.1 Industrial/Agricultural Biotechnology Companies
4.1.1.2 Biotechnology And Pharmaceutical Firms
4.1.1.3 Academic/Research Institutes
4.1.1.4 Other Sectors
5 Bioinformatics Market Dynamics
5.1 Introduction
5.2 Drivers
5.2.1 Bioinformatics Improves On Drug Discovery Process
5.2.2 Bioinformatics Support Biomarker Discovery To Develop Safer Drugs
5.2.3 High Throughput Screening
5.2.4 Advancement In Genomics & Proteomics
5.2.5 Government Initiatives & It Development
5.3 Restraints
5.3.1 Lack Of Common Data Format
5.3.2 Saturated Pharmaceutical Market
5.4 Opportunities
5.4.1 Need For Integrated Solutions
5.4.2 Novel Research Field: Chemogenomics
6 Key -Omic Areas Influencing Bioinformatics
6.1 Bioinformatics And -Omics
6.2 Genomics Applications
6.3 Proteomics Applications
7 Bioinformatics Platforms Market
7.1 Introduction
7.2 Drivers
7.2.1 Need For Better Output Quality In Drug Discovery
7.2.2 Platform Application In Life Sciences
7.3 Sequence Alignment Platforms
7.3.1 Sequence Analysis (Alignment)
7.3.1.1 Consensus Sequence And Translation
7.3.1.2 Multiple Sequence Alignment
7.3.1.3 Phylogenetic Tree Building
7.3.2 Lab End Sequence Analysis
7.3.2.1 Contig Assembly
7.3.2.2 Primer Design And Cloning
7.4 Sequence Manipulation Platforms
7.4.1 Random Sequences & Format Conversion
7.4.2 Sequence Analysis (Sequence Manipulation)
7.4.3 Sequence Figures
7.5 Sequence Analysis Platforms
7.5.1 DNA Sequence Analysis Platforms
7.5.1.1 Restriction, Detect Repeats, And Unusual Patterns
7.5.1.2 Align Sequences
7.5.1.3 Search Tools
7.5.2 Assignment Of Protein Function
7.5.2.1 Search Pattern, Motif, Profiles Domains, Families
7.5.2.2 Pathways Analysis And Computation
7.5.2.3 Protein-Protein Interaction And Protein Annotation
7.5.2.4 New Sequence Alert
7.5.3 RNA Analysis Platform
7.5.4 Analyze And Model 3d Structure
7.5.4.1 3D Analysis And Viewers
7.5.4.2 Homology Modeling
7.5.5 Phylogenetic Analysis
7.5.5.1 Multiple Sequence Alignment
7.5.5.2 Organism Classification
7.5.6 Microarray Data Analysis
7.6 Structural Analysis Platforms
7.6.1 Physiochemical Properties & Alignment Platforms
7.6.2 Primary Sequence Analysis
7.6.3 Secondary Structure Sequence Prediction
7.6.4 Sequence Visualization
7.7 Other Platforms
7.7.1 Visualization Platforms
7.7.2 Physical Mapping Software
8 Bioinformatics Content/Knowledge Management Tools
8.1 Introduction
8.2 Drivers
8.2.1 Exponential Growth In Proteomic Data
8.2.2 Data Integration Needed For In-House Solutions
8.2.3 Growth In Clinical Trials Market
8.3 Generalized Knowledge Management Tools
8.3.1 Drivers
8.3.1.1 Need For Complex Information On Molecule Structure And Sequence
8.3.1.2 Reduction Of Surplus Data Enables Time Saving
8.3.2 Primary Sequence Knowledge Management
8.3.3 Protein Sequence Knowledge Management
8.3.4 Carbohydrate Knowledge Management
8.3.5 3D Structure Knowledge Management
8.4 Specialized Knowledge Management
8.4.1 Drivers
8.4.1.1 Growing Number Of Studies In Proteomics And DNA Sequence Analysis
8.4.1.2 Knowledge Management Tools Improve Data Security
8.4.2 Specialized Sequence Knowledge Management
8.4.3 Genome Knowledge Management
8.4.3.1 Collections
8.4.3.2 Model Organism Knowledge Management
8.4.4 Specialized Protein Knowledge Management
8.4.4.1 Drivers
8.4.4.1.1 Need For Structured And Automated Process In Proteomics
8.4.4.1.2 Integration Of Bioinformatics And Proteomics
8.4.4.2 Proteome Knowledge Management
8.4.4.3 Specific Protein Family Knowledge Management
8.4.4.4 Protein Classification Knowledge Management
8.4.5 Specialized Structural Knowledge Management
8.4.6 Pathways Knowledge Management
8.4.7 Microarray Knowledge Management
8.4.8 2D-Page Knowledge Management
9 Bioinformatics Services Market
9.1 Introduction
9.2 Drivers
9.2.1 Trend Towards Consultancy Services
9.2.2 Need For Total Data Integration & Warehousing Solutions
9.3 Data Analysis
9.3.1 Drivers
9.3.1.1 Increasing Informatics Applications In Biotechnology
9.3.1.2 Analytical Tools Stem Data Overflow
9.3.2 Genomics & Proteomics Data Analysis
9.3.3 Microarray Data Analysis
9.3.4 Computational Services Market
9.4 Sequencing Services
9.4.1 Drivers And Restraints
9.4.1.1 Outsourcing Sequencing Projects
9.4.1.2 Other Competitive Technologies
9.4.2 Shotgun Sequencing
9.4.3 Primer Walking
9.4.4 Expression Profile Clustering
9.4.5 Re-Sequencing
9.4.6 High Throughput Sequencing
9.4.7 Multiple Sequence Alignment
9.5 Database And Management
9.5.1 Conception And Realization
9.5.2 Development Of User Interface
9.5.3 Migration
9.5.4 Maintenance & Backup System
9.6 Other Services
10 Bioinformatics Applications Market
10.1 Introduction
10.2 Drivers
10.2.1 Development Of Molecular Diagnostics
10.2.2 Development Of Personalized Medicine
10.3 Restraints
10.3.1 Need For More Holistic Solutions
10.3.2 Limited To Specialized Applications
10.4 Opportunities
10.4.1 Bioinformatics In Epidemiology
10.4.2 Integration Of Systems Biology With Bioinformatics
10.5 Molecular Medicine
10.5.1 Bioinformatics Applications
10.5.1.1 Pharmacogenomics
10.5.1.2 Pharmacoproteomics
10.5.1.3 Metabolomics
10.5.1.4 Pharmacogenetics
10.6 Molecular Medicine Market, By Region
10.6.1 U.S.: Government Support
10.6.2 Europe: High Healthcare Expenditure
10.6.3 ASIA: Emerging Economies Boost Market Growth
10.7 Preventive Medicine
10.7.1 Factors Influencing Market Growth
10.7.1.1 Pharmacogenomics Applications
10.7.1.2 Aerospace & Occupational Medicine
10.8 Gene Therapy
10.8.1 Drivers & Opportunities
10.8.1.1 Bioinformatics Application In Gene Therapy
10.8.1.2 Data Proliferation In Gene Therapy
10.8.1.3 Declining Growth Of Gene Therapy Market
10.9 Drug Development
10.9.1 Drivers
10.9.1.1 Cost Reduction In Drug Discovery Process
10.9.1.2 Need For Data Processing In Drug Development
10.9.2 Virtual High Throughput Screening
10.9.3 Sequence Analysis
10.9.4 Similarity Searches
10.9.5 Drug Lead Optimization
10.9.6 Physicochemical Modeling
10.9.7 Drug Bioavailability And Bioactivity
10.10 Other Application Markets
10.10.1.1 Antibiotic Resistance
10.10.1.2 Waste Cleanup
10.10.1.3 Forensic Analysis Of Microbes
10.10.1.4 Bio-Weapon Creation
10.10.1.5 Evolutionary Studies
10.10.1.6 Natural Quality Improvement
10.10.1.7 Development Of Drought Resistance Varieties
10.10.1.8 Veterinary Science
11 Geographic Analysis
11.1 Introduction
11.2 North America
11.3 Europe
11.4 Asia
11.5 ROW
12 Competitive Landscape
12.1 Introduction
12.2 New Product, Technology, Service Launch (2008 TO 2010)
12.2.1 Agilent Technologies (U.S.)
12.2.2 Applied Biosystems (U.S.)
12.2.3 Biodiscovery Inc. (U.S.)
12.2.4 CLC Bio (Denmark)
12.2.5 DNASTAR (U.S.)
12.2.6 Genome Quest (U.S.)
12.2.7 Helicos Biosciences Corporation (U.S.)
12.2.8 Invitrogen Corporation (U.S.)
12.2.9 Molegro (U.S.)
12.2.10 Ocimum Biosolutions (U.S.)
12.2.11 Softgenetics (U.S.)
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